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Photorespiration plays an important role in the regulation of photosynthetic electron flow under fluctuating light in tobacco plants grown under full sunlight

机译:在充满阳光的烟草植物中光呼吸在波动光下调节光合作用电子流中起着重要作用

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摘要

Plants usually experience dynamic fluctuations of light intensities under natural conditions. However, the responses of mesophyll conductance, CO2 assimilation, and photorespiration to light fluctuation are not well understood. To address this question, we measured photosynthetic parameters of gas exchange and chlorophyll fluorescence in tobacco leaves at 2-min intervals while irradiance levels alternated between 100 and 1200 μmol photons m−2 s−1. Compared with leaves exposed to a constant light of 1200 μmol photons m−2 s−1, both stomatal and mesophyll conductances were significantly restricted in leaves treated with fluctuating light condition. Meanwhile, CO2 assimilation rate and electron flow devoted to RuBP carboxylation at 1200 μmol photons m−2 s−1 under fluctuating light were limited by the low chloroplast CO2 concentration. Analysis based on the C3 photosynthesis model indicated that, at 1200 μmol photons m−2 s−1 under fluctuating light, the CO2 assimilation rate was limited by RuBP carboxylation. Electron flow devoted to RuBP oxygenation at 1200 μmol photons m−2 s−1 under fluctuating light remained at nearly the maximum level throughout the experimental period. We conclude that fluctuating light restricts CO2 assimilation by decreasing both stomatal and mesophyll conductances. Under such conditions, photorespiration plays an important role in the regulation of photosynthetic electron flow.
机译:植物通常会在自然条件下经历光强度的动态波动。但是,对叶肉传导,CO2同化和光呼吸对光起伏的反应还不十分了解。为了解决这个问题,我们以2分钟的间隔测量了烟叶中气体交换和叶绿素荧光的光合作用参数,同时辐照水平在100和1200μmol光子m −2 s -1 < / sup>。与暴露于1200μmol光子m −2 s -1 的恒定光照下的叶片相比,在波动的光照条件下,叶片的气孔和叶肉传导率均受到显着限制。同时,低叶绿体CO2浓度限制了1200μmol光子m -2 s -1 下RuBP羧化的CO2同化率和电子流受到叶绿体CO2浓度低的限制。基于C3光合作用模型的分析表明,在波动光下,在1200μmol光子m −2 s −1 下,RuBP羧化限制了CO2的同化率。在脉动光下,专门用于RuBP氧化的电子流在1200μmol光子m −2 s −1 下在整个实验期间几乎保持在最大水平。我们得出的结论是,波动的光通过降低气孔和叶肉的电导来限制CO2的吸收。在这种条件下,光呼吸在光合电子流的调节中起重要作用。

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